CN216347536U - Drying device for steel slag brick production process - Google Patents

Drying device for steel slag brick production process Download PDF

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Publication number
CN216347536U
CN216347536U CN202123080472.7U CN202123080472U CN216347536U CN 216347536 U CN216347536 U CN 216347536U CN 202123080472 U CN202123080472 U CN 202123080472U CN 216347536 U CN216347536 U CN 216347536U
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grinding
drying
production process
steel slag
brick production
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CN202123080472.7U
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孙雷
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Zouping Zhonghao New Brick Industry Co ltd
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Zouping Zhonghao New Brick Industry Co ltd
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Abstract

The utility model discloses a drying device for a steel slag brick production process, relates to the technical field of steel slag brick production, and aims to solve the problems that the existing steel slag containing moisture can be adhered in a grinding net to influence the blanking speed, and the drying and grinding are separately arranged to increase the processing time. The steel slag grinding device is novel in structure, steel slag can be effectively prevented from being adhered to the circumferential side wall of the grinding net, the blanking speed of the grinding net is improved, meanwhile, the drying time can be effectively shortened, the drying uniformity is improved, and the processing time is reduced without a transfer process.

Description

Drying device for steel slag brick production process
Technical Field
The utility model relates to the technical field of steel slag brick production, in particular to a drying device for a steel slag brick production process.
Background
In-process at the production of steel slag brick, need carry out drying process to the slag, because the slag itself just has certain moisture when contacting with the external world, thereby can influence the grinding efficiency of slag, it is more when the slag contains moisture, and the slag grinding is when likepowder thing, make the slag can the adhesion in grinding the net, can influence the unloading speed of grinding the net in the past for a long time, and drying process and grinding process separately set up, thereby processing time has been increased, consequently, in order to solve this type of problem, we have proposed a drying device for slag brick production process.
SUMMERY OF THE UTILITY MODEL
The drying device for the steel slag brick production process provided by the utility model solves the problems that steel slag containing water can be adhered in a grinding net to influence the blanking speed, and the drying and grinding are separately arranged to increase the processing time.
In order to achieve the purpose, the utility model adopts the following technical scheme:
the utility model provides a drying device for slag brick production process, includes drying mechanism and grinding mechanism, grinding mechanism is located drying mechanism's inside top, and the slag that grinding mechanism ground and finish directly falls into drying mechanism's bottom, just actuating mechanism in the grinding mechanism is located sealing mechanism's top, the circumference lateral wall of grinding mechanism is provided with cleans the mechanism, and cleans the mechanism and is used for sweeping the slag of gluing in grinding mechanism, the bottom of cleaning the mechanism is provided with rabbling mechanism, and rabbling mechanism and clean the mechanism syntropy and rotate.
Preferably, dry mechanism includes dry reation kettle, play hopper, stop valve and heating piece, it is located dry reation kettle's bottom to go out the hopper, the stop valve is located the circumference lateral wall of a hopper, just the one end of stop valve extends to the inside of a hopper, the heating piece is located inside dry reation kettle's wall thickness, the heating piece is circular array with dry reation kettle's central point and distributes, dry reation kettle's circumference lateral wall is provided with control panel.
Preferably, the sealing mechanism comprises a sealing cover and a feed hopper, the sealing cover is positioned at the top end of the drying reaction kettle, the feed hopper is positioned at the top end of the sealing cover, and the bottom end of the feed hopper penetrates through the sealing cover to extend to the inside of the drying reaction kettle.
Preferably, the grinding mechanism comprises a driving motor, grinding balls and a grinding net, the grinding driving motor is located at the top end of the sealing cover, the output end of the driving motor penetrates through the sealing cover to be connected with the grinding balls, and the grinding balls are located inside the grinding net.
Preferably, clean the mechanism including linking up the piece and cleaning the arc board, the one end that links up the piece is connected with the grinding ball, just it is the symmetry setting with the axis of grinding ball to link up the piece, clean the arc board and be located the one end of linking up the piece and keeping away from the grinding ball, just clean the arc board and be located the circumference lateral wall of grinding net.
Preferably, the stirring mechanism comprises a joint ring, an external stirring rod and an internal stirring rod, the top end of the external stirring rod is connected with the sweeping arc plate, and the internal stirring rod is positioned inside the joint ring.
The utility model has the beneficial effects that:
1. the grinding ball drives the connecting block to rotate, and the connecting block drives the cleaning arc plate to clean the circumferential side wall of the grinding net, so that steel slag can be effectively prevented from adhering to the circumferential side wall of the grinding net, and the discharging speed of the grinding net is improved.
2. Grinding mechanism is located drying mechanism's inside for the slag powder that grinding mechanism ground out directly drops to drying mechanism's bottom, and when grinding, drives outside stirring rod and inside stirring rod through the grinding ball and stirs the slag powder simultaneously, thereby can effectual reduction stoving time, improve the stoving degree of consistency, and need not transport the process and reduced process time.
In conclusion, the device can effectively prevent steel slag from adhering to the circumferential side wall of the grinding net, improves the blanking speed of the grinding net, can effectively reduce the drying time, improves the drying uniformity, and does not need a transfer process to reduce the processing time.
Drawings
FIG. 1 is a schematic structural diagram of the present invention.
FIG. 2 is a schematic view of the split structure of the present invention.
Fig. 3 is a bottom view of the agitation mechanism of the present invention.
Reference numbers in the figures: 1. a drying mechanism; 101. drying the reaction kettle; 102. a discharge hopper; 103. a stop valve; 104. a heating block; 2. a sealing mechanism; 201. a sealing cover; 202. a feed hopper; 3. a grinding mechanism; 301. a drive motor; 302. grinding balls; 303. grinding the net; 4. a control panel; 5. a stirring mechanism; 501. a connecting loop; 502. an external stirring rod; 503. an internal stirring rod; 6. a cleaning mechanism; 601. a joining block; 602. and cleaning the arc plate.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Referring to fig. 1-3, a drying device for slag brick production process, includes drying mechanism 1 and grinding mechanism 3, grinding mechanism 3 is located the inside top of drying mechanism 1, and the slag that grinding mechanism 3 ground the completion directly falls into the bottom of drying mechanism 1, just actuating mechanism in the grinding mechanism 3 is located the top of sealing mechanism 2, the circumference lateral wall of grinding mechanism 3 is provided with cleans mechanism 6, and cleans mechanism 6 and is used for sweeping the slag of adhesion on grinding mechanism 3, the bottom of cleaning mechanism 6 is provided with rabbling mechanism 5, and rabbling mechanism 5 and clean mechanism 6 syntropy and rotate.
As shown in fig. 1 and fig. 2, the drying mechanism 1 includes a drying reactor 101, a discharge hopper 102, a stop valve 103 and a heating block 104, the discharge hopper 102 is positioned at the bottom end of the drying reaction kettle 101, the stop valve 103 is positioned on the circumferential side wall of the discharge hopper 102, one end of the stop valve 103 extends to the inside of the discharge hopper 102, the heating block 104 is positioned inside the wall thickness of the drying reaction kettle 101, the heating blocks 104 are distributed in a circular array at the central point of the drying reaction kettle 101, the circumferential side wall of the drying reaction kettle 101 is provided with a control panel 4, the driving motor 301 and the heating block 104 are controlled by the control panel 4, the sealing mechanism 2 comprises a sealing cover 201 and a feed hopper 202, the sealing cover 201 is positioned at the top end of the drying reaction kettle 101, the feed hopper 202 is positioned at the top end of the sealing cover 201, and the bottom end of the feed hopper 202 extends to the inside of the drying reaction vessel 101 through the sealing cap 201.
As shown in fig. 2 and 3, the grinding mechanism 3 includes a driving motor 301, a grinding ball 302 and a grinding net 303, the grinding driving motor 301 is located at the top end of a sealing cover 201, and the output end of the driving motor 301 passes through the sealing cover 201 to be connected with the grinding ball 302, the grinding ball 302 is located inside the grinding net 303, the grinding ball 302 drives steel slag to extrude and grind in the grinding net 303, the cleaning mechanism 6 includes a connecting block 601 and a cleaning arc plate 602, one end of the connecting block 601 is connected with the grinding ball 302, the connecting block 601 is symmetrically arranged with the central axis of the grinding ball 302, the cleaning arc plate 602 is located at one end of the connecting block 601 far from the grinding ball 302, the cleaning arc plate 602 is located at the circumferential side wall of the grinding net 303, the stirring mechanism 5 includes a connecting ring 501, an external stirring rod 502 and an internal stirring rod 503, the top end of the external stirring rod 502 is connected with the cleaning arc plate 602, the inner stirring rod 503 is located inside the joint ring 501, and the outer stirring rod 502 drives the inner stirring rod 503 to rotate through the joint ring 501, so that the steel slag powder is stirred through the inside and the outside simultaneously.
The working principle is as follows: when the device is used, the device is moved to a proper position for installation, then the device is connected with an external power supply, then steel slag to be ground is guided into the grinding net 303 through the feed hopper 202, the driving motor 301 is started at the same time, the driving motor 301 drives the grinding balls 302 to rotate in the grinding net 303, so that the steel slag is driven by the grinding balls 302 to be extruded and ground in the grinding net 303, the steel slag can be effectively ground into powder, the powdered steel slag directly falls into the bottom end of the drying reaction kettle 101 through the grinding net 303, the steel slag powder is directly adhered to the outer wall of the grinding net 303 when falling, the grinding balls 302 drive the connecting block 601 to rotate while rotating, the connecting block 601 drives the arc cleaning plate 602 to rotate around the circumferential side wall of the grinding net 303, so that the steel slag adhered to the arc cleaning plate 602 can be effectively cleaned to the bottom end of the drying reaction kettle 101, when grinding, through the temperature of control panel 4 control heating piece 104 to can be effectual with the inside temperature rise of dry reation kettle 101, and clean arc 602 when the pivoted, can drive outside puddler 502 and rotate, and outside puddler 502 drives inside puddler 503 through linking circle 501 and rotates, thereby stirs the slag powder simultaneously through the inside and outside, makes the drying efficiency of slag powder higher, and the more even of drying.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and equivalent alternatives or modifications according to the technical solution of the present invention and the inventive concept thereof should be covered by the scope of the present invention.

Claims (6)

1. The utility model provides a drying device for slag brick production process, includes drying mechanism (1) and grinding mechanism (3), its characterized in that, grinding mechanism (3) are located the inside top of drying mechanism (1), and the slag that grinding mechanism (3) ground and finish falls into the bottom of drying mechanism (1), just actuating mechanism in grinding mechanism (3) is located the top of sealing mechanism (2), the circumference lateral wall of grinding mechanism (3) is provided with cleans mechanism (6), and cleans mechanism (6) and be used for cleaning the slag of gluing on grinding mechanism (3), the bottom of cleaning mechanism (6) is provided with rabbling mechanism (5), rabbling mechanism (5) and clean mechanism (6) syntropy and rotate.
2. The drying device for the steel slag brick production process according to claim 1, wherein the drying mechanism (1) comprises a drying reaction kettle (101), a discharge hopper (102), a stop valve (103) and a heating block (104), the discharge hopper (102) is located at the bottom end of the drying reaction kettle (101), the stop valve (103) is located on the circumferential side wall of the discharge hopper (102), one end of the stop valve (103) extends to the inside of the discharge hopper (102), the heating block (104) is located inside the wall thickness of the drying reaction kettle (101), the heating block (104) is distributed in a circular array with the central point of the drying reaction kettle (101), and the circumferential side wall of the drying reaction kettle (101) is provided with a control panel (4).
3. The drying device for the slag brick production process according to claim 1, wherein the sealing mechanism (2) comprises a sealing cover (201) and a feed hopper (202), the sealing cover (201) is positioned at the top end of the drying reaction kettle (101), the feed hopper (202) is positioned at the top end of the sealing cover (201), and the bottom end of the feed hopper (202) extends to the inside of the drying reaction kettle (101) through the sealing cover (201).
4. The drying device for the slag brick production process according to claim 1, wherein the grinding mechanism (3) comprises a driving motor (301), grinding balls (302) and a grinding net (303), the driving motor (301) is positioned at the top end of a sealing cover (201), the output end of the driving motor (301) is connected with the grinding balls (302) through the sealing cover (201), and the grinding balls (302) are positioned inside the grinding net (303).
5. The drying device for the steel slag brick production process according to claim 1, wherein the cleaning mechanism (6) comprises a connection block (601) and a cleaning arc plate (602), one end of the connection block (601) is connected with the grinding ball (302), the connection block (601) is symmetrically arranged with respect to the central axis of the grinding ball (302), the cleaning arc plate (602) is positioned at one end of the connection block (601) far away from the grinding ball (302), and the cleaning arc plate (602) is positioned at the circumferential side wall of the grinding net (303).
6. A drying device for a steel slag brick production process according to claim 1, characterized in that the stirring mechanism (5) comprises a connecting ring (501), an outer stirring rod (502) and an inner stirring rod (503), the top end of the outer stirring rod (502) is connected with the sweeping arc plate (602), and the inner stirring rod (503) is positioned inside the connecting ring (501).
CN202123080472.7U 2021-12-09 2021-12-09 Drying device for steel slag brick production process Active CN216347536U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123080472.7U CN216347536U (en) 2021-12-09 2021-12-09 Drying device for steel slag brick production process

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123080472.7U CN216347536U (en) 2021-12-09 2021-12-09 Drying device for steel slag brick production process

Publications (1)

Publication Number Publication Date
CN216347536U true CN216347536U (en) 2022-04-19

Family

ID=81162599

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123080472.7U Active CN216347536U (en) 2021-12-09 2021-12-09 Drying device for steel slag brick production process

Country Status (1)

Country Link
CN (1) CN216347536U (en)

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